Marcelli Agnese, Foggi Paolo, Moroni Laura, Gellini Cristina, Salvi Pier Remigio, Badovinac Ivana Jelovica
Laboratorio Europeo di Spettroscopie non Lineari (LENS), Universitá di Firenze, via N. Carrara 1, 50019 Sesto Fiorentino, Firenze, Italy.
J Phys Chem A. 2007 Mar 29;111(12):2276-82. doi: 10.1021/jp0686846. Epub 2007 Mar 8.
The fluorescence spectra of unsubstituted porphyrin (H2P), diprotonated porphyrin (H4P2+), and isoelectronic tetraoxaporphyrin dication (TOxP2+) have been measured in solution at room temperature. The S2-->S0 fluorescence has been observed, much more intense for TOxP2+ than for H4P2+ and H2P. In the TOxP2+ case, the S2-->S0 fluorescence spectrum is remarkably sharp and shows an excellent mirror symmetry with respect to S0-->S2 absorption. On the contrary, the spectra of H4P2+ and H2P are shifted and more extended with respect to the absorption counterparts. The differences have been attributed primarily to the change of the equilibrium geometry upon excitation, larger in H2P and H4P2+ than in TOxP2+ and in the case of H4P2+ to the nonplanar conformation of the macrocycle. Also the S1-->S0 spectra of H2P, H4P2+, and TOxP2+ have been measured and more qualitatively discussed. The S1 and S2 fluorescence decays have been observed for H4P2+ and TOxP2+ exciting with ultrashort pulses. The S2 lifetime of TOxP2+ is of the order of the temporal resolution of our experimental apparatus, whereas that of H4P2+ is shorter. The S2-->S0 quantum yield of TOxP2+ has been estimated to be 0.035, approximately 3 orders of magnitude higher than that of H4P2+. It is proposed on the basis of ab initio model calculations that excited states of the H4P2+(CF3COO-)2 complex with charge-transfer character are responsible of the increased extension of the S2-->S0 spectrum with respect to that of H2P.
在室温下于溶液中测量了未取代卟啉(H₂P)、双质子化卟啉(H₄P²⁺)和等电子四氧杂卟啉二价阳离子(TOxP²⁺)的荧光光谱。观察到了S₂→S₀荧光,TOxP²⁺的荧光比H₄P²⁺和H₂P的要强得多。在TOxP²⁺的情况下,S₂→S₀荧光光谱非常尖锐,并且相对于S₀→S₂吸收呈现出极佳的镜像对称。相反,H₄P²⁺和H₂P的光谱相对于吸收对应物发生了位移且更宽展。这些差异主要归因于激发时平衡几何结构的变化,H₂P和H₄P²⁺中的变化比TOxP²⁺中的大,并且对于H₄P²⁺而言还归因于大环的非平面构象。还测量了H₂P、H₄P²⁺和TOxP²⁺的S₁→S₀光谱并进行了更定性的讨论。用超短脉冲激发H₄P²⁺和TOxP²⁺时观察到了S₁和S₂荧光衰减。TOxP²⁺的S₂寿命与我们实验装置的时间分辨率相当,而H₄P²⁺的S₂寿命更短。TOxP²⁺的S₂→S₀量子产率估计为0.035,比H₄P²⁺的大约高3个数量级。基于从头算模型计算提出,具有电荷转移特征的H₄P²⁺(CF₃COO⁻)₂配合物的激发态是S₂→S₀光谱相对于H₂P的展宽增加的原因。